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具有基于可铭刻透明度的动态记忆行为的热响应和应变敏感水凝胶

Thermoresponsive and Strain-Sensitive Hydrogels with Inscribable Transparency-Based Dynamic Memory Behaviors.

作者信息

Ye Huabiao, Dong Ting, Wu Shaohua, Han Guangting, Chen Que, Lou Ching-Wen, Chi Shan, Liu Yanming, Liu Cui, Lin Jia-Horng

机构信息

College of Textile and Clothing, Qingdao University, 308 Ningxia Road, Qingdao 266071, P.R. China.

Advanced Medical Care and Protection Technology Research Center, Qingdao University, 308 Ningxia Road, Qingdao 266071, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2025 Mar 12;17(10):15921-15937. doi: 10.1021/acsami.4c19368. Epub 2025 Feb 28.

Abstract

Personal health management drives the development of intelligent hydrogel dressings, which pursue optical transparency, stretchability, and conductivity and are required to perceive specific environmental stimuli by dynamic structure, shape, or color memory. However, the incorporation of weak perceptive elements or black conductive polymers limits the fabrication of these hydrogels. Herein, we propose smart hydrogels with inscribable dynamic memorizing-forgetting transparency behavior by in situ degrading and immobilizing conductive polydopamine-doped polypyrrole (PDA-PPy) nanodots into an interpenetrating poly(NIPAm--acrylic acid) copolymer/polyacrylamide (PNAc/PAM) network. These hydrogels are not only optically transparent (∼64.99%), stretchable (∼1052%), self-adhesive (21-105 kPa), and highly conductive (∼0.8 S/m), but also can perceive temperature changes via structure shifts, which enables temperature-induced reversible transparency control. Especially, the temperature-dependent transparent-opaque transition kinetics of the hydrogels are tuned by the protonation of -COOH groups at pH < p, utilizing which the hydrogels achieve inscribed programmed dynamic memory for information memorizing-forgetting-recalling based on a pH-engraved dynamic transparency evolution of the hydrogel in response to temperature changes. These intelligent hydrogels can not only be used as efficient near-infrared (NIR) light-controlled drug release carriers to realize on-demand drug release, but also serve as a soft sensor to recognize different body postures and movement behaviors with high strain sensitivity (gauge factor, GF = 5.98), broad working strain (5-500%), rapid response (139 ms), and excellent sensing reliability (≈1000 cycles at 50% strain).

摘要

个人健康管理推动了智能水凝胶敷料的发展,这种敷料追求光学透明性、可拉伸性和导电性,并需要通过动态结构、形状或颜色记忆来感知特定的环境刺激。然而,弱感知元素或黑色导电聚合物的加入限制了这些水凝胶的制备。在此,我们通过将导电聚多巴胺掺杂聚吡咯(PDA-PPy)纳米点原位降解并固定到互穿的聚(NIPAm-丙烯酸)共聚物/聚丙烯酰胺(PNAc/PAM)网络中,提出了具有可铭刻动态记忆-遗忘透明行为的智能水凝胶。这些水凝胶不仅具有光学透明性(约64.99%)、可拉伸性(约1052%)、自粘性(21-105 kPa)和高导电性(约0.8 S/m),还能通过结构变化感知温度变化,从而实现温度诱导的可逆透明度控制。特别是,水凝胶的温度依赖性透明-不透明转变动力学通过pH < p时-COOH基团的质子化进行调节,利用这一点,水凝胶基于水凝胶在响应温度变化时的pH刻蚀动态透明度演变,实现了用于信息记忆-遗忘-召回的铭刻编程动态记忆。这些智能水凝胶不仅可以用作高效近红外(NIR)光控药物释放载体以实现按需药物释放,还可以作为软传感器,以高应变灵敏度(应变系数,GF = 5.98)、宽工作应变(5-500%)、快速响应(139 ms)和出色的传感可靠性(在50%应变下约1000次循环)识别不同的身体姿势和运动行为。

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